Page last updated: 2024-08-21

oleanolic acid and ergosterol

oleanolic acid has been researched along with ergosterol in 9 studies

Research

Studies (9)

TimeframeStudies, this research(%)All Research%
pre-19901 (11.11)18.7374
1990's1 (11.11)18.2507
2000's2 (22.22)29.6817
2010's3 (33.33)24.3611
2020's2 (22.22)2.80

Authors

AuthorsStudies
Evans, JL; Gealt, MA1
Liu, D; Yang, J1
Huang, JP; Jiang, JS; Ma, YM; Zhang, PC1
Wang, Q; Zhang, CF; Zhang, M1
Cao, L; Fan, H; Hu, JF; Liu, ST; Su, JJ; Xia, G; Xiong, J; Yang, GX; Ye, M; Zhao, Y1
Cai, JY; Wang, YN; Zhang, DZ; Zhao, L; Zhu, E1
Butassi, E; Cortés, JCG; Díaz, C; Palacio, JP; Ribas, JC; Svetaz, LA; Vicente, F; Wolfender, JL; Zacchino, SA; Zhou, S1
Narayanan, AK; Nawada, N; Ranganathan, PR; Rao, DKV1
Gu, B; Li, H; Li, Y; Shan, M; Yao, H; Zhu, Y; Zhu, Z1

Other Studies

9 other study(ies) available for oleanolic acid and ergosterol

ArticleYear
The sterols of growth and stationary phases of Aspergillus nidulans cultures.
    Journal of general microbiology, 1985, Volume: 131, Issue:2

    Topics: Aspergillus nidulans; Chromatography, Gas; Ergosterol; Lanosterol; Oleanolic Acid; Sterols; Triterpenes

1985
[A study on chemical components of Tetrastigma hemsleyanum Diels et Gilg. Native to China].
    Zhongguo Zhong yao za zhi = Zhongguo zhongyao zazhi = China journal of Chinese materia medica, 1999, Volume: 24, Issue:10

    Topics: Ergosterol; Oleanolic Acid; Plants, Medicinal; Sitosterols; Vitaceae

1999
[Studies on constituents from root and stem of Ervatamia hainanensis].
    Zhongguo Zhong yao za zhi = Zhongguo zhongyao zazhi = China journal of Chinese materia medica, 2006, Volume: 31, Issue:14

    Topics: Apocynaceae; Ergosterol; Oleanolic Acid; Plant Roots; Plant Stems; Plants, Medicinal; Triterpenes

2006
[Studies on chemical constituents of Ligularia altaica].
    Zhong yao cai = Zhongyaocai = Journal of Chinese medicinal materials, 2009, Volume: 32, Issue:4

    Topics: Asteraceae; Ergosterol; Oleanolic Acid; Pentacyclic Triterpenes; Plants, Medicinal; Rhizome; Sitosterols; Solvents; Spectrometry, Mass, Electrospray Ionization

2009
(24S)-ergostane-3β,5α,6β-triol from Hedyotis chrysotricha with inhibitory activity on migration of SK-HEP-1 human hepatocarcinoma cells.
    Natural product research, 2013, Volume: 27, Issue:12

    Topics: Antineoplastic Agents, Phytogenic; Apoptosis; Carcinoma, Hepatocellular; Cell Line, Tumor; Cell Movement; Drug Screening Assays, Antitumor; Ergosterol; Hedyotis; Humans; Inhibitory Concentration 50; Liver Neoplasms; Medicine, Chinese Traditional; Molecular Structure; Oleanolic Acid; Plants, Medicinal

2013
[Study on chemical constituents from Anoectochilus chapaensis].
    Zhong yao cai = Zhongyaocai = Journal of Chinese medicinal materials, 2012, Volume: 35, Issue:6

    Topics: Alkanes; Ergosterol; Molecular Structure; Oleanolic Acid; Orchidaceae; Plants, Medicinal; Solvents; Stearic Acids; Triterpenes

2012
The antifungal activity and mechanisms of action of quantified extracts from berries, leaves and roots of Phytolacca tetramera.
    Phytomedicine : international journal of phytotherapy and phytopharmacology, 2019, Volume: 60

    Topics: Antifungal Agents; Argentina; Candida albicans; Candida glabrata; Ergosterol; Fruit; Humans; Methylene Chloride; Oleanolic Acid; Phytolacca; Plant Extracts; Plant Leaves; Plant Roots; Plants, Medicinal; Saponins; Tandem Mass Spectrometry

2019
Triglyceride deficiency and diacylglycerol kinase1 activity lead to the upregulation of mevalonate pathway in yeast: A study for the development of potential yeast platform for improved production of triterpenoid.
    Biochimica et biophysica acta. Molecular and cell biology of lipids, 2020, Volume: 1865, Issue:6

    Topics: Acyltransferases; Diacylglycerol O-Acyltransferase; Ergosterol; Gene Expression Regulation, Fungal; Gene Knockout Techniques; Metabolic Networks and Pathways; Mevalonic Acid; Oleanolic Acid; Repressor Proteins; Saccharomyces cerevisiae; Saccharomyces cerevisiae Proteins; Squalene; Synthetic Biology; Transcriptional Activation; Triglycerides; Up-Regulation

2020
Kalopanaxsaponin A induces reactive oxygen species mediated mitochondrial dysfunction and cell membrane destruction in Candida albicans.
    PloS one, 2020, Volume: 15, Issue:11

    Topics: Antifungal Agents; Candida albicans; Candidiasis; Cell Membrane; Drug Resistance, Fungal; Ergosterol; Humans; Membrane Potential, Mitochondrial; Mitochondria; Oleanolic Acid; Reactive Oxygen Species; Saponins

2020